EP2148717A2 - Mechanical dilation of the ostia of paranasal sinuses and other passageways of the ear, nose and throat - Google Patents
Mechanical dilation of the ostia of paranasal sinuses and other passageways of the ear, nose and throatInfo
- Publication number
- EP2148717A2 EP2148717A2 EP08746464A EP08746464A EP2148717A2 EP 2148717 A2 EP2148717 A2 EP 2148717A2 EP 08746464 A EP08746464 A EP 08746464A EP 08746464 A EP08746464 A EP 08746464A EP 2148717 A2 EP2148717 A2 EP 2148717A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- dilator
- shaft
- expandable
- mechanical
- members
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods
- A61B17/24—Surgical instruments, devices or methods for use in the oral cavity, larynx, bronchial passages or nose; Tongue scrapers
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B17/00—Surgical instruments, devices or methods
- A61B17/02—Surgical instruments, devices or methods for holding wounds open, e.g. retractors; Tractors
- A61B17/0218—Surgical instruments, devices or methods for holding wounds open, e.g. retractors; Tractors for minimally invasive surgery
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M29/00—Dilators with or without means for introducing media, e.g. remedies
- A61M29/02—Dilators made of swellable material
Definitions
- a second inner lumen is provided in the distal portion of the tubular member which has a proximal guidewire port at least 15 cm but not more than 60 cm from the distal end of the catheter and a distal guidewire port which opens into the interior of the expandable cage.
- a guidewire or low profile fixed-wire steerable dilatation catheter is slidably disposed within the second lumen and a flexible tubular element extends through the expandable cage interior to facilitate the rapid exchange of the catheter.
- the catheter is particularly adapted to hold open an artery after a vascular procedure therein such as a balloon or other type of angioplasty.
- a radioisotope is placed either inside the expansion member, alloyed into the metal from which the expansion member is constructed, coated onto the expansion member's exterior surface or alternately, the non-radioactive metal or alloy of the expansion member can be irradiated so that it has become radioactive.
- the radioactive expansion member or radioactive catheter is advanced through the vessel to the site of the obstruction and opposed axial forces are then applied to the expansion member causing it to expand, thereby dilating and irradiating the obstruction.
- mechanical dilator devices and methods wherein mechanical dilators are used to dilate the ostia of paranasal sinuses or other passageways in the ear, nose or throat.
- mechanical dilator shall be interpreted to include at least; 1 ) expandable dilators that comprises one or more non-balloon dilation structures with or without an accompanying balloon and 2) members of varying diameter or cross dimension that may be advanced into a passageway to cause dilation of that passageway.
- the invention includes numerous types of mechanical dilators including but not limited to: Dilators That Shorten in a Longitudinal Dimension While Expanding in at Least One Transverse Dimension; Split Tube and Splayable Dilators; Dilators That Expand Transversely When Compressed Longitudinally; Dilators That Have Expandable Outer Covers With Apparatus Which Cause Expansion of the Outer Cover; Dilators That Expand Transversely In Response To Advancement or Retraction of a Wedge or Other Spreading Member; Dilators Having Hinged or Pivotal Members; Non-Expandable Tapered Dilators ; Dilators that Expand In Response to Conditions Within the Body and Mechanical Dilators In Combination With Balloons.
- mechanical dilators including but not limited to: Dilators That Shorten in a Longitudinal Dimension While Expanding in at Least One Transverse Dimension; Split Tube and Splayable Dilators; Dilators That Expand Transversely When Compressed Longitudinally; Dilators That Have Expandable Outer Covers
- Figures 2A and 2B show one embodiment of a dilator device of the present invention having an expandable dilator that shortens longitudinally as it expands.
- Figures 2C and 2D show another embodiment of a dilator device of the present invention having an expandable dilator that shortens longitudinally as it expands.
- Figures 2E and 2F show another embodiment of a dilator device of the present invention having an expandable dilator that shortens longitudinally as it expands.
- Figures 2G and 2H show another embodiment of a dilator device of the present invention having an expandable dilator that shortens longitudinally as it expands.
- Figures 21 and 2J show another embodiment of a dilator device of the present invention having an expandable dilator that shortens longitudinally as it expands.
- Figures 2K and 2L show another embodiment of a dilator device of the present invention having an expandable dilator that shortens longitudinally as it expands.
- Figures 2M and 2N show another embodiment of an expandable dilation member that shortens longitudinally as it expands and may be incorporated into a dilation device of the present invention.
- Figures 3A and 3B show one embodiment of a dilation device of the present invention having an expandable dilator that comprises a plurality of members that expand outwardly.
- Figure 3C shows distal end views of the device of Figure 3A in non- expanded (on left) and expanded (on right) configurations.
- Figures 3E and 3F show another embodiment of an expandable dilator comprising a split tube which forms individual outwardly expanding members.
- Figures 3G and 3H show another embodiment of an expandable dilator comprising a split tube which forms individual outwardly expanding members.
- Figures 4A and 4B show longitudinal sectional views of an embodiment of a dilator device of the present invention having a expandable dilator comprising a compressible material that expands transversely as it is compressed longitudinally.
- Figures 5A and 5B show an embodiment of a dilator device of the present invention having an expandable dilator comprising a flexible or elastomeric outer cover and an apparatus within that outer cover which causes the outer cover to expand transversely.
- Figure 5C is a longitudinal sectional view of the distal portion of a dilator device of the type shown generally in Figures 5A and 5B, wherein the apparatus within the outer cover comprises a cam assembly disposed in a non-expanded position.
- Figure 5F is an exploded view of the cam assembly of the device shown in Figures 5C-5E.
- Figure 6D is a longitudinal sectional view through line 6D-6D of Figure
- Figures 71 is a side view of another embodiment of a dilator device of the present invention having an expandable dilator comprising members that splay outwardly to a dilated configuration.
- Figures 8G and 8H show schematic diagrams of an embodiment of a dilation device of the present invention having an expandable dilator that comprises pivotally connected members.
- Figure 9B is a partial side view of yet another dilator device.
- Figure 91 shows another device of the present invention comprising a rigid or malleable shaft with a dilator bulb formed at its distal end.
- Figures 1OA and 10B show another dilator device of the present invention having an expandable dilator that comprises a structure that expands as it warms to body temperature.
- Figure 11 is a broken, longitudinal sectional view of another dilation device of the present invention having an expandable dilator comprising a flexible or elastomeric cover within which a filamentous or similar bulking ,material accumulates to cause expansion of the dilator.
- Figures 11A and 11B depict alternative configurations of a member for use with the device of Figure 11.
- Figure 12A is a. partial right longitudinal sectional view of a mechanical dilator device having a balloon in addition to the mechanical dilator.
- Figure 12B is a partial left- longitudinal sectional view of the device of Figure 12A.
- Figure 1 shows a human subject undergoing a procedure wherein a trans-nasally inserted mechanical dilation device 10 is used to dilate an opening of a paranasal sinus or other passageway within the ear, nose or throat.
- an endoscope 24 may optionally be inserted into the subject's nose and used to view some or all of the procedure on an endoscope monitor 26.
- an imaging device such as a C-arm fluoroscope 20 and monitor 22 (or any other suitable imaging device such as a stationary fluoroscope, fluoro-CT scanner, portable or intraoperative CT scanner, etc.) may also be used to obtain images of the device(s) and/or relevant anatomy during some or all of the procedure.
- an imaging device such as a C-arm fluoroscope 20 and monitor 22 (or any other suitable imaging device such as a stationary fluoroscope, fluoro-CT scanner, portable or intraoperative CT scanner, etc.) may also be used to obtain images of the device(s) and/or relevant anatomy during some or all of the procedure.
- endoscopically visible and/or radiographically visible markers may be provided on any of the devices of the present invention at locations which will facilitate use of the endoscope to assist the operator in positioning and/or using the devices in a safe and effective manner.
- Figure 2 is a general showing of one example of a method of the present invention wherein the dilation device 10 comprises a dilator 30 on an elongate shaft 32 through which a guidewire GW is inserted and which is insertable through a guide catheter 28.
- guide catheters through which dilator devices of the present invention may be inserted include those described in parent applications Serial No. 11/655,794; 11/150,847 and 10/944,270, which are incorporated herein by reference.
- trans-nasal guide catheters useable for guiding some of the dilator devices of the present invention are available commercially as Relieva sinus guide catheters from Acclarent, Inc., Menlo park, California.
- an optional endoscope 24 is inserted into the nostril and is being used to observe the insertion and positioning of the dilation device 10 and/or the guide catheter 28.
- the guide catheter 28 was initially inserted to a location near the frontal sinus ostium FSO and the guidewire GW was then advancd into the frontal sinus FS.
- a guidewire lumen formed in the dilator device shaft 32 was used to advance the dilator device over the guidewire GW and through the guide catheter 28 to a position where the dilator 30 is within the frontal sinus ostium FSO and is thus used to dilate that frontal sinus ostium FSO to improve drainage and ventilation of the frontal sinus FS.
- the dilation devices of the present invention may be used to dilate the natural or surgically modified ostia of any paranasal sinuses (i.e., frontal, maxillary, sphenoid, ethmoid or frontal) and/or other passageways of the ear, nose or throat, such as the Eustachian tubes or the naso-lacrimal ducts.
- paranasal sinuses i.e., frontal, maxillary, sphenoid, ethmoid or frontal
- other passageways of the ear, nose or throat such as the Eustachian tubes or the naso-lacrimal ducts.
- Figures 2A through 11 show various non-limiting examples of mechanical dilator devices that may be used to dilate passageways of the ear, nose and throat. These examples include expandable dilators which may be advanced into the desired passageway while in a non-expanded state and then expanded to cause dilation of the passageway as well as dilators that have regions of varying diameter or transverse dimension (e.g., tapered surfaces) that may be advanced into the passageway so as to dilate the passageway.
- expandable dilators which may be advanced into the desired passageway while in a non-expanded state and then expanded to cause dilation of the passageway as well as dilators that have regions of varying diameter or transverse dimension (e.g., tapered surfaces) that may be advanced into the passageway so as to dilate the passageway.
- regions of varying diameter or transverse dimension e.g., tapered surfaces
- Figures 2A through 2M show several examples of expandable mechanical dilators which shorten longitudinally as they expand transversely.
- One or more actuating members extend through the shaft 32a and is/are useable to cause the dilator 30a to shorten from its initial non-expanded length L 1 to its expanded length L 2 thereby causing concurrent transverse expansion of the dilator 30a, as shown.
- FIGS. 2C-2M Figures 2C and 2D show a dilation device comprising an expandable dilator 30b having a plurality of strut members 31 at radially spaced apart locations with their proximal ends attached to the distal end of an outer shaft member 32b and their distal ends attached to the distal end of an inner shaft member 34.
- These strut members 31 may be formed of plastic, metal or any suitable material and may be in the form of wires, ribbons, strands, etc.
- a guidewire GW extends through a lumen in the inner shaft member 34.
- the dilator 30b When the outer shaft member 32B is in a retracted position as seen in Figure 2C, the dilator 30b will be in a non-expanded configuration. When the outer shaft member 32b is advanced in the distal direction, it will push the proximal ends of the strut members forward, thereby causing the strut members 31 to bow outwardly and effectively causing the dilator 30b to shorten longitudinally, as shown in Figure 2D. Thereafter, when the outer shaft member 30b is retracted in the proximal direction, the dilator will again elongate and the strut members 31 will return to their non-expanded configurations. Although a total of four strut members 31 are shown in this example, it is to be appreciated that various numbers of strut members 312 may be used and, for some applications, even a single strut member 31 may be suitable.
- Figures 2E and 2F show an embodiment of a dilation device comprising an expandable dilator 30c on the end of a shaft 32c.
- the dilator
- FIG. 30c comprises two strut members 33 at diametrically opposite positions with their distal ends anchored to a distal structure 36 and their proximal ends anchored to a proximal structure 38 on the distal end of the shaft 32c.
- a screw member 34c extends through the shaft 32c. When the screw member is rotated in a particular direction, it causes the distal structure 36 to move in the proximal direction, toward the proximal structure 38, thereby causing longitudinal shortening of the dilator 30c and outward bowing of the strut members 33, as seen in Figure 2F. Rotation of the screw member 34c in the other direction will cause the dilator 30c to return to its non-expanded configuration shown in Figure 2E.
- Figures 2G and 2H show an example of a dilator device having a dilator 3Od that comprises a cylindrical mesh tube (e.g., wire or plastic mesh).
- the distal end of the mesh tube is secured to a tip member on the end of an inner shaft member 34d and the proximal end of the mesh tube is secured to the distal end of an outer shaft member.
- a suitable handpiece may be provided to facilitate handling and actuation of the device.
- the handpiece comprises a pistol grip handpiece 40 which, when squeezed, causes the outer shaft to move in the distal direction and/or the inner shaft member 34d to move in the proximal direction.
- the handpiece 40 may be biased to the non-expanded position such that, when the operator stops squeezing the handpiece 40, the outer shaft member 32d will automatically retract in the proximal direction and the dilator 3Od will return to its non-expanded configuration as seen in Figure 2G.
- Figures 21 and 2J show an embodiment of a dilator device having a dilator 3Oe that may comprise the same type of mesh tube as described above with respect to Figures 2G and 2H.
- a stationary lower shaft member 46 and a moveable upper shaft member 42.
- the distal end of the mesh tube is secured to a tip member on the distal end of the stationary lower shaft member 46.
- the proximal end of the mesh tube is secured to a ring member 44 on the distal end of the longitudinally moveable upper shaft member 42.
- This ring member 44 extends around the stationary lower shaft member 46, as shown.
- the handpiece in this embodiment is a scissor grip handpiece 48.
- the distal end of the mesh tube is secured to the distal end of the inner shaft 48 and the proximal end of the mesh tube is secured to the distal end of the outer shaft 32f.
- mesh tube dilators 3Od, 3Oe and 3Of seen in Figures 2G-2L, the strut dilators 30b and 30c seen in Figures 2C-2F and the other types of dilators referred to above e.g., solid or substantially continuous material such as polymeric elastomehc tubing, film, sheet, woven Dacron, etc. or non-solid or non-continuous materials such as mesh, screen, wire cages, spaced apart struts, single struts, etc. are merely examples and the invention is not limited to dilations of those types of construction.
- Figures 2M and 2N show another dilator 3Og that may be used on any of the devices illustrated in Figures 2A-2L.
- This dilator 2M comprises a segment of polymeric tube having longitudinal slits formed at radially spaced apart locations about the mid-region of the tube. When either end of this tube is forced toward the other, the tube will longitudinally shorten and the ribbon like strips of tube between the lists will bow outwardly to a radially expanded configuration as seen in Figures 2N and 2M.
- Figures 3A-3H show examples of dilation devices that comprise tubular shafts having longitudinal slits formed in the distal end of the tube to create one or more individual members that splay or expand outwardly to dilate the ostium or other passageway in which the dilator is positioned.
- Figures 3A-3D show one embodiment of a dilation device comprising a tubular shaft 56 having a longitudinal slit 54 that extends from the distal end of the tubular shaft 56 at a location that is approximately ⁇ to 9 mm proximal to the distal end of the tubular shaft 56, thereby creating separable members 52 at the distal end of the tubular shaft 56.
- an expander such as a balloon catheter 58 extends though the tubular shaft 56 with its balloon 60 positioned within the distal portion of the tubular shaft 56 between the separable members 52.
- the balloon catheter 58 may optionally have a guidewire lumen to allow the device to be advanced over a guidewire GW, as shown.
- the balloon 60 is inflated, causing the members 52 to splay apart in diametrically opposite directions, thereby dilating the passageway in that plane.
- This device may be used to effect dilation of a passageway in only one plane. Or, this device may be rotated within the passageway and re-expanded, one or more times, to effect expansion of the passageway in a plurality of planes or, potentially, to effect 360 degree radial expansion of the passageway.
- the specific plane or direction in which the passageway is dilated may be controlled by changing the number, width and/or location of the slit(s) 54 formed in the distal portion of the tubular shaft 56 to form a single member 52a between those slits.
- Figures 3E and 3F show a device where two slits 54a are formed closer together than in the embodiment of Figures 3A-3D.
- An expander such as a specially configured balloon or spring wire that bows in the direction of the member 52a will cause the member 52a to splay outwardly as seen in the right side of Figure 3E.
- this device could be used to exert concentrated force on the wall of the passageway in a single direction, thereby dilating the passageway to one side but not the other.
- Figures 3G and 3H show another embodiment of an expandable dilator comprising a tubular shaft 56b with wide slits 54b formed on opposite sides of the distal portion of the tubular shaft 56b, thereby forming two relatively narrow members 52b at diametrically spaced apart locations.
- An expander such as the balloon catheter 58 described above, may be positioned within the distal portion of the tubular shaft 56b between the members 52b and may be used to cause the members 52b to splay outwardly, thereby widening the ostium or passageway in a relatively narrow plane.
- Figures 4A and 4B show longitudinal sectional views of an embodiment of a dilator device of the present invention having a expandable dilator having a compressible dilator 60 formed of an elastomeric material, gel filled bag or similar compressible material that will radially expand when longitudinally compressed.
- the proximal end of the dilator 60 abuts against the distal end of a tubular shaft 62 and the distal end of the dilator 60 abuts against a flange on the end of a plunger 64 that extends through the tubular shaft 62 and through the dilator 60, as shown.
- the plunger 64 is withdrawn in the proximal direction and/or the tubular shaft 62 is advanced in the distal direction, thereby longitudinally compressing the dilator 60 and causing the dilator 60 to expand radially as seen in Figure 4B, thereby resulting in dilation of the ostium or other passageway.
- the plunger 64 is advanced in the distal direction and/or the tubular shaft 62 is retracted in the proximal direction, thereby allowing the dilator 60 to elongate longitudinally and contract radially to its original configuration, as shown in Figure 4A.
- a method according to claim 3 wherein the expandable dilator comprises an expandable outer cover and expansion apparatus useable to cause the outer cover to expand when desired.
- the present invention also include dilators that have full or partial expandable outer covers with apparatus for causing the outer cover to expand in a transverse dimension after the dilator has been positioned within the ostium or other passageway to be dilated.
- the outer cover may, in some cases, be constructed to distribute or disseminate the force exerted on the adjacent tissue as the dilator expands.
- Figures 5A-5F show a dilator device 62 having an elongate shaft 62 and an expandable dilator 60 positioned on the shaft 62.
- the shaft 62 may be flexible, rigid or malleable.
- the dilator 60 comprises an expandable outer cover 64 having a cam assembly 66 disposed therein.
- the can assembly is initially disposed in a non-expanded configuration as seen in Figure 5C and is transitionable to an expanded configuration as seen in Figure 5E.
- the outer cover 64 is formed of an elastomeric material 80 that has reinforcing members 82 (e.g., fibers, filaments, wires, metal strips, braid, woven fiber material, etc.) extending through the elastomeric material 80 to impart desired rigidity to at least the side walls of the outer cover 64 so that the side walls will remain substantially flat and will not assume a bumpy or wavy configuration conforming directly to the shape of the underlying cam surfaces when in the expanded configuration seen in Figure 5E. In this manner the cover 64 expands radially and distributes the expansion force evenly over the adjacent tissue of the anatomical ostium or other passageway being dilated.
- reinforcing members 82 e.g., fibers, filaments, wires, metal strips, braid, woven fiber material, etc.
- the cam assembly comprises first, second, third and fourth cams 70, 72, 74, 76 mounted on an off-center drive shaft 68. Only the fourth cam 76 is directly connected to the drive shaft 68 such that rotation of the drive shaft 68 causes concurrent rotation of only the fourth cam 76.
- the first, second and third cams 70, 72, 74 have arcuate slots of varying length formed in the distal sides thereof and the second, third and fourth cams 72, 74, 76 have pins 78 that extend from the proximal sides thereof and insert into the slots 80 on the neighboring cams, as may be appreciated from Figures 5C and 5F.
- the drive shaft 68 is rotated, causing corresponding rotation of the fourth cam 76, the pin 78 on the fourth cam 76 advances through the slot 80 on the neighboring third cam 74 until it reaches the end of that slot 80 at which time the pin 78 of the fourth cam 76 begins to drive rotation of the third cam 74.
- the pin 78 on the third cam 74 advances through the slot 80 on the neighboring second cam 72 until it reaches the end of that slot 80 at which time the pin 78 of the third cam 74 begins to drive rotation of the second cam 73.
- the pin 78 on the second cam 72 advances through the slot 80 on the neighboring first cam 70 until it reaches the end of that slot 80 at which time the pin 78 of the second cam 72 begins to drive rotation of the first cam 70. Because the drive shaft 68 extends through the cams 70, 72, 74, 76 in an off-center fashion, this results in an enlargement of the overall width of the cam assembly as seen in Figure 5E, thereby expanding the outer cover 64. When it is desired to return the dilator 60 to its non-expanded configuration, the drive shaft 68 is rotated in the opposite direction, causing the cams 70, 72, 74, 76 to once again assume the non-expanded configuration seen in Figure
- This dilator 280 comprises an elongate tubular shaft 284 having a handpiece 286 on its proximal end and a dilator comprising an expandable outer cover 282 disposed at or near the distal end of the shaft 284.
- a reel 288 is mounted in the handpiece 286.
- a member 290 such as a filament, wire, fiber, etc. is initially wound onto the reel 288 and the member 290 extends through tubular shaft 284 into a cavity within the expandable cover 282.
- the reel 288 turns in a direction which feeds the member 290 into the cavity within the expandable cover 282, thereby causing the outer cover 282 to expand transversely.
- the reel 288 When it is subsequently desired to return the dilator to its non-expanded configuration, the reel 288 is rotated in the opposite direction, thereby retracting the member 290 out of the cavity within the expandable cover 282 and back into the handpiece 286.
- the member 290 may be biased to a specific shape, such as the spiral or watch spring like configuration of the member 290a shown in Figure 11 A.
- the member 290 may form a random coil or may otherwise collect in random fashion within the expandable cover 282, as demonstrated by the member 290b shown in Figure 11 B.
- Another type or apparatus that may be used to expand an outer cover or other expandable structure described herein is a magnetic apparatus where magnets are initially positioned adjacent to one another (e.g., side by side or one in front of the other) such that their magnetic fields do not substantially repel one another.
- a pull member may be used to pull one of the magnets to a position on top of , below or next to the other such that opposite pols of the magnets are juxtaposed and the magnetic force forces the magnets apart, thereby expanding the dilator.
- a push member may be used to pus the first magnet back to its original position.
- a vibrator Another type or apparatus that may be used to expand an outer cover or other expandable structure described herein is a vibrator.
- a small vibrator such as an off center motor, could be positioned within the cover. Prior to energization of the vibrator, the device would be in a non-expanded state. However, after energization of the vibrator, vibratory movement of the vibrator will cause the expandable cover to expand.
- the invention also includes a number of dilator devices having expandable dilators that undergo expansion when a wedge or other spreading member is advanced or retracted between portions of the dilator, causing them to separate and expand outwardly.
- Figures 6A-6D show a dilation device that comprises an elongate shaft 92 having an expandable dilator 90 mounted on the elongate shaft 92.
- the shaft 92 may be flexible, rigid or malleable.
- the dilator comprises a generally cylindrical, expandable elastomehc tube having an inner lumen with an enlarged tapered distal region 94.
- a round, tapered wedge member 98 is connected to an inner pull member 100 such as a wire or other elongate member. Initially, while the dilator 90 is in its non-expanded configuration, the wedge member 98 resides within the enlarged tapered distal region 94 of the dilator lumen, as seen in Figure 6C.
- the pull member 100 is pulled in the proximal direction causing the wedge member to be retracted within the lumen of the dilator 90, thereby causing the distal portion of the dilation to expand radially.
- the tapered expanded configuration may be useful when expanding passageways that are naturally tapered or where it is intended to dilate one region of the passageway more than another region.
- Figure 9A shows a dilation device 200 which comprises an elongate flexible, rigid or malleable shaft 202 having a tapered distal portion 2004.
- a lumen may extend through the device 200 to allow the device 200 to be advanced over a guidewire GW or other uses such as irrigation, infusion or aspiration.
- the diameter of the shaft 202 is larger than the pre-dilation diameter of the ostium or other passageway to be dilated.
- the device 200 is positioned with its distal end within (or in alignment with) the ostium or other passageway to be dilated. The device is then advanced into the ostium or other passageway causing dilation of the ostium or other passageway.
- the balloon 304 may be inflated to further dilate the ostium or passageway to an even larger diameter and/or to a different shape and/or to produce a different effect (e.g., soft tissue compression, hemostasis, etc) than had been achieved by the initial dilation using the mechanical dilator 302.
- the balloon may be deplated and members 316R, 316L may in some cases be pushed in the distal direction to assist in collapsing of the mechanical dilator assembly 302.
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- Surgery (AREA)
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- Engineering & Computer Science (AREA)
- Heart & Thoracic Surgery (AREA)
- Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
- Otolaryngology (AREA)
- Oral & Maxillofacial Surgery (AREA)
- Dentistry (AREA)
- Biomedical Technology (AREA)
- Pulmonology (AREA)
- Medical Informatics (AREA)
- Molecular Biology (AREA)
- Animal Behavior & Ethology (AREA)
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Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US78970507A | 2007-04-24 | 2007-04-24 | |
| PCT/US2008/061048 WO2008134288A2 (en) | 2007-04-24 | 2008-04-21 | Mechanical dilation of the ostia of paranasal sinuses and other passageways of the ear, nose and throat |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2148717A2 true EP2148717A2 (en) | 2010-02-03 |
| EP2148717A4 EP2148717A4 (en) | 2014-04-02 |
Family
ID=39926286
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP20080746464 Withdrawn EP2148717A4 (en) | 2007-04-24 | 2008-04-21 | MECHANICAL EXPANSION OF OSTIUMS OF PARANASAL SINUS AND OTHER PASSAGES OF THE EAR, NOSE AND THROAT |
Country Status (2)
| Country | Link |
|---|---|
| EP (1) | EP2148717A4 (en) |
| WO (1) | WO2008134288A2 (en) |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102009018723A1 (en) | 2009-04-27 | 2010-10-28 | Karl Storz Gmbh & Co. Kg | Medical dilatation instrument |
| DE102011081615B4 (en) * | 2011-08-26 | 2025-12-31 | Karl Storz Se & Co. Kg | Medical instrument for dilating bony structures |
| AU2014253945B2 (en) * | 2013-04-17 | 2019-03-07 | DePuy Synthes Products, LLC | Expandable dilator |
| USD772408S1 (en) | 2014-07-09 | 2016-11-22 | Simplicity | Nasal dilator |
| US12070595B2 (en) | 2018-08-15 | 2024-08-27 | Cvrx, Inc. | Devices and methods for percutaneous electrode implant |
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| US5169386A (en) * | 1989-09-11 | 1992-12-08 | Bruce B. Becker | Method and catheter for dilatation of the lacrimal system |
| FR2662083A1 (en) * | 1990-05-21 | 1991-11-22 | Perouse Sa Laboratoires | Dilator apparatus, in particular for a blood vessel |
| US6015423A (en) * | 1998-04-10 | 2000-01-18 | Andrese; Craig A. | Dilatation catheter tip for angioplasty procedures |
| US6436119B1 (en) * | 1999-09-30 | 2002-08-20 | Raymedica, Inc. | Adjustable surgical dilator |
| US6471644B1 (en) * | 2000-04-27 | 2002-10-29 | Medtronic, Inc. | Endoscopic stabilization device and method of use |
| US8317816B2 (en) * | 2002-09-30 | 2012-11-27 | Acclarent, Inc. | Balloon catheters and methods for treating paranasal sinuses |
| US7803150B2 (en) * | 2004-04-21 | 2010-09-28 | Acclarent, Inc. | Devices, systems and methods useable for treating sinusitis |
| US20060004323A1 (en) * | 2004-04-21 | 2006-01-05 | Exploramed Nc1, Inc. | Apparatus and methods for dilating and modifying ostia of paranasal sinuses and other intranasal or paranasal structures |
| EP2298317A1 (en) * | 2005-04-04 | 2011-03-23 | Sinexus, Inc. | Device and methods for treating paranasal sinus conditions |
| GB0519259D0 (en) | 2005-09-21 | 2005-10-26 | Imp College Innovations Ltd | A device |
-
2008
- 2008-04-21 EP EP20080746464 patent/EP2148717A4/en not_active Withdrawn
- 2008-04-21 WO PCT/US2008/061048 patent/WO2008134288A2/en not_active Ceased
Also Published As
| Publication number | Publication date |
|---|---|
| WO2008134288A2 (en) | 2008-11-06 |
| EP2148717A4 (en) | 2014-04-02 |
| WO2008134288A3 (en) | 2008-12-24 |
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